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The I-TevI Nuclease and Linker Domains Contribute to the Specificity of Monomeric TALENs

机译:I-TevI​​核酸酶和接头结构域有助于单体TALEN的特异性。

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摘要

Precise genome editing in complex genomes is enabled by engineered nucleases that can be programmed to cleave in a site-specific manner. Here, we fused the small, sequence-tolerant monomeric nuclease domain from the homing endonuclease I-TevI to transcription-like activator effectors (TALEs) to create monomeric Tev-TALE nucleases (Tev-mTALENs). Using the PthXo1 TALE scaffold to optimize the Tev-mTALEN architecture, we found that choice of the N-terminal fusion point on the TALE greatly influenced activity in yeast-based assays, and that the length of the linker used affected the optimal spacing of the TALE binding site from the I-TevI cleavage site, specified by the motif 5′-CNNNG-3′. By assaying activity on all 64 possible sequence variants of this motif, we discovered that in the Tev-mTALEN context, I-TevI prefers A/T-rich triplets over G/C-rich ones at the cleavage site. Profiling of nucleotide requirements in the DNA spacer that separates the CNNNG motif from the TALE binding site revealed substantial, but not complete, tolerance to sequence variation. Tev-mTALENs showed robust mutagenic activity on an episomal target in HEK 293T cells consistent with specific cleavage followed by nonhomologous end-joining repair. Our data substantiate the applicability of Tev-mTALENs as genome-editing tools but highlight DNA spacer and cleavage site nucleotide preferences that, while enhancing specificity, do confer moderate targeting constraints.
机译:复杂的基因组中的精确基因组编辑可通过工程化核酸酶实现,工程化核酸酶可被编程为以位点特异性方式切割。在这里,我们将小序列耐受的单体核酸酶结构域从归巢核酸内切酶I-TevI​​融合到转录样激活因子(TALE),以创建单体Tev-TALE核酸酶(Tev-mTALENs)。使用PthXo1 TALE支架优化Tev-mTALEN架构,我们发现TALE上N末端融合点的选择极大地影响了基于酵母的测定中的活性,并且所用接头的长度影响了最佳分离距离。来自I-TevI​​切割位点的TALE结合位点,由基序5'-CNNNG-3'指定。通过分析该基序的所有64种可能序列变体的活性,我们发现在Tev-mTALEN的背景下,I-TevI​​在切割位点比富含G / C的三胞胎更喜欢富含A / T的三胞胎。将CNNNG基序与TALE结合位点分开的DNA间隔子中的核苷酸要求分析表明,其对序列变异具有实质性但不完全的耐受性。 Tev-mTALENs对HEK 293T细胞中的游离靶标显示出强大的诱变活性,与特定裂解以及随后的非同源末端连接修复相一致。我们的数据证实了Tev-mTALENs作为基因组编辑工具的适用性,但强调了DNA间隔区和切割位点核苷酸的偏好,尽管增强了特异性,但确实具有中等的靶向限制。

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